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基于Ti-Al体系的包覆机械复合材料在高温合成过程中的原位相形成。

In situ phase formation during high-temperature synthesis in clad mechanocomposites based on the Ti-Al system.

作者信息

Loginova Marina, Sobachkin Alexey, Sitnikov Alexander, Yakovlev Vladimir, Myasnikov Andrey, Sharafutdinov Marat, Tolochko Boris, Golovina Tatiana

机构信息

Polzunov Altai State Technical University, Lenina Avenue, Barnaul, Altai Region 656038, Russian Federation.

Institute of Solid State Chemistry and Mechanochemistry of Siberian Branch Russian Academy of Sciences, Kutateladze, Novosibirsk 630128, Russian Federation.

出版信息

J Synchrotron Radiat. 2022 May 1;29(Pt 3):698-710. doi: 10.1107/S1600577522002004. Epub 2022 Mar 15.

Abstract

An in situ synchrotron experimental study of phase formation dynamics in clad mechanocomposites of Ti-Al systems during high-temperature synthesis was performed. Cladding of the obtained mechanocomposites was carried out with an SiO target, with a deposition time of 40 min. The high-temperature synthesis was performed using the thermal explosion method based on a microwave induction heater in the in situ mode on an experimental setup adapted to synchrotron radiation time-resolved diffractometry. The influence of the cladding on the macrokinetic parameters of synthesis in situ was investigated experimentally. It was found that for an ignition temperature T = 650 ± 10°C, the maximum synthesis temperatures were in the range T = 1380-1465°C. The characteristic heating speed was 525 K min. The sequence and temperature-time interval of phase formation are determined. The formation of the TiAl, TiAl and TiAl compounds begins at T = 661°C. At T = 1465.6°C, the synthesis product is multiphase, the structures of the formed TiAl (content about 70%) and TiAl (content about 25%) have a nonequilibrium state. At the stage of system annealing with T = 1384.9°C, the reaction of the components occurs with the formation of almost monophase TiAl (content of more than 90%); Ti occupies the rest.

摘要

对Ti-Al系统包覆机械复合材料在高温合成过程中的相形成动力学进行了原位同步加速器实验研究。用SiO靶对所得机械复合材料进行包覆,沉积时间为40分钟。高温合成采用基于微波感应加热器的热爆炸法,在适用于同步辐射时间分辨衍射的实验装置上以原位模式进行。通过实验研究了包覆对原位合成宏观动力学参数的影响。结果发现,对于点火温度T = 650 ± 10°C,最高合成温度在T = 1380 - 1465°C范围内。特征加热速度为525 K/min。确定了相形成的顺序和温度-时间间隔。TiAl、TiAl和TiAl化合物的形成始于T = 661°C。在T = 1465.6°C时,合成产物为多相,形成的TiAl(含量约70%)和TiAl(含量约25%)的结构处于非平衡状态。在T = 1384.9°C的系统退火阶段,组分发生反应,形成几乎单相的TiAl(含量超过90%);其余为Ti。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c93/9070719/e365a26da363/s-29-00698-fig1.jpg

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